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Cytogenetic anchoring of radiation hybrid and virtual maps of sheep chromosome X and comparison of X chromosomes in sheep, cattle, and human

机译:绵羊X染色体的辐射杂交和虚拟图的细胞遗传锚定以及绵羊,牛和人中X染色体的比较

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摘要

A comprehensive physical map was generated for Ovis aries chromosome X (OARX) based on a cytogenomics approach. DNA probes were prepared from bacterial artificial chromosome (BAC) clones from the CHORI-243 sheep library and were assigned to G-banded metaphase spreads via fluorescence in-situ hybridization (FISH). A total of 22 BACs gave a single hybridization signal to the X chromosome and were assigned out of 32 tested. The positioned BACs contained 16 genes and a microsatellite marker which represent new cytogenetically mapped loci in the sheep genome. The gene and microsatellite loci serve to anchor between the existing radiation hybrid (RH) and virtual sheep genome (VSG) maps to the cytogenetic OARX map, whilst the BACs themselves also serve as anchors between the VSG and the cytogenetic maps. An additional 17 links between the RH and cytogenetic maps are provided by BAC end sequence (BES) derived markers that have also been positioned on the RH map. Comparison of the map orders for the cytogenetic, RH, and virtual maps reveals that the orders for the cytogenetic and RH maps are most similar, with only one locus, represented by BAC CH243-330E18, mapping to relatively different positions. Several discrepancies, including an inverted segment are found when comparing both the cytogenetic and RH maps with the virtual map. These discrepancies highlight the value of using physical mapping methods to inform the process of future in silico map construction. A detailed comparative analysis of sheep, human, and cattle mapping data allowed the construction of a comparative map that confirms and expands the knowledge about evolutionary conservation and break points between the X chromosomes of the three mammalian species.
机译:基于细胞基因组学方法,为卵巢X染色体(OARX)生成了完整的物理图谱。从CHORI-243绵羊文库的细菌人工染色体(BAC)克隆中制备DNA探针,并通过荧光原位杂交(FISH)将其分配到G带中期扩散。总共22个BAC向X染色体发出单个杂交信号,并从32个测试中分配了BAC。定位的BAC包含16个基因和一个微卫星标记,这些标记代表绵羊基因组中新的细胞遗传学定位的基因座。基因和微卫星基因座可在现有辐射杂交(RH)和虚拟绵羊基因组(VSG)图之间锚定到细胞遗传学OARX图上,而BAC本身也在VSG和细胞遗传图谱之间充当锚定。 RH和细胞遗传图谱之间的其他17个链接是由BAC末端序列(BES)衍生的标记提供的,这些标记也位于RH谱图上。细胞遗传图谱,RH图谱和虚拟图谱的图序比较表明,细胞遗传图谱和RH图谱的图谱最相似,只有一个基因座(以BAC CH243-330E18表示)映射到相对不同的位置。将细胞遗传图谱和RH图谱与虚拟图谱进行比较时,发现了几个差异,包括反向片段。这些差异突出了使用物理地图绘制方法来告知将来的计算机地图构建过程的价值。通过对绵羊,人类和牛的制图数据进行详细的比较分析,可以构建比较图,从而确认并扩展了有关三种哺乳动物X染色体之间的进化保守性和断裂点的知识。

著录项

  • 来源
    《Chromosome Research》 |2009年第4期|497-506|共10页
  • 作者单位

    Forschungsbereich Molekularbiologie Forschungsinstitut für die Biologie landwirtschaftlicher Nutztiere Wilhelm-Stahl-Allee 2 D-18196 Dummerstorf Germany;

    Forschungsbereich Molekularbiologie Forschungsinstitut für die Biologie landwirtschaftlicher Nutztiere Wilhelm-Stahl-Allee 2 D-18196 Dummerstorf Germany;

    Forschungsbereich Molekularbiologie Forschungsinstitut für die Biologie landwirtschaftlicher Nutztiere Wilhelm-Stahl-Allee 2 D-18196 Dummerstorf Germany;

    Department of Animal Dairy and Veterinary Sciences Utah State University Logan UT USA;

    Department of Animal Science Tokyo University of Agriculture Kanagawa Japan;

    Department of Animal Dairy and Veterinary Sciences Utah State University Logan UT USA;

    Department of Veterinary Science University of Melbourne Victoria Australia;

    Department of Animal Dairy and Veterinary Sciences Utah State University Logan UT USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    sheep; Ovis aries; comparative mapping; X chromosome;

    机译:绵羊;羊羊;比较作图;X染色体;

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